Abstract:
An image enlargement processing portion 16 of the image processing device includes a data acquisition section 70 which judges whether or not photographing condition data is included in the image photographing data, and for acquiring content of the photographing condition data in a case where it is judged that the photographing condition data is included in the input image photographing data, and an enlargement process determination section 72 which determines a process parameter for an enlargement process for generating enlarged image data from the imaging data, in which the photographing condition data includes information regarding presence or absence of an optical low-pass filter during creation of the imaging data or information regarding an array of color filters of an imaging portion used to create the imaging data.
Abstract:
An image reduction processing section 16 includes a data acquisition section 70 that acquires whether shooting condition data is included in image capture data (including image pickup data) 30 and contents of the shooting condition data, and reduction processing discrimination unit for discriminating at least any of whether reduction association processing (such as low-pass filter processing) associated with reduction processing of generating reduced image data from the image pickup data is executed, a processing parameter (such as a cutoff frequency of low-pass filter processing) of the reduction association processing, and a processing parameter (such as a reduction ratio) of the reduction processing, on the basis of an acquisition result of the shooting condition data. The shooting condition data includes information on the presence or absence of the optical low-pass filter and information on the array of the color filters.
Abstract:
An apparatus for controlling display of a stereoscopic image, includes: a display control portion which cuts out a stereoscopic image in a to-be-displayed area which is an area corresponding to a part of a stereoscopic image consisting of a plurality of images with a parallax, and displays the cut-out stereoscopic image on a display portion; a parallax change amount calculation portion which calculates a change amount between a parallax amount in a stereoscopic image within the to-be-displayed area before the to-be-displayed area is moved and a parallax amount in a stereoscopic image within the to-be-displayed area after the to-be-displayed area is moved by a first moving distance when an instruction to move the to-be-displayed area is issued; and a to-be-displayed area movement control portion which moves the to-be-displayed area by a moving distance in accordance with the change amount calculated by the parallax change amount calculation portion.
Abstract:
An image pickup device, comprising: a plurality of photoelectric conversion elements; a first microlens; and a second microlens, which is one microlens provided above n×n (n: 2 or more) of the photoelectric conversion elements laterally and longitudinally adjacent to each other, the second microlens pupil-dividing light entering the microlens for guiding to a light receiving surface of each of the n×n photoelectric conversion elements, the first microlens and the second microlens being provided in a mixed manner so that a two-dimensional image and a three-dimensional image can be respectively generated based on at least a first output signal corresponding to the first microlens and a second output signal corresponding to the second microlens, color filters of any of the colors being provided above the plurality of photoelectric conversion elements, and color filters of a same color being provided to the n×n photoelectric conversion elements corresponding to the second microlens.